Жиры против углеводов. Битва гигантов — страница 35 из 39

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107 Kuklinski/Scheminonek, Mitochondrientherapie.

108 Philstrom et al., Lancet, Volume 366, Issue 9499, November 2005.

109 Sconyers, J. R. et al., Relationship of bacteremia to toothbrushing in patients with periodontitis. J Am Dent Assoc 87 (3): 616 – 22, 1973.

110 US Department of Health and Human Services, Oral Health in America. National Institute of Health 2000. Siehe http://www.nidcr.nih.gov/sgr/sgrohweb/home.htm. Abgerufen August 2018.

111 Fife, Bruce, Ölziehkur. Entgiftung und Heilung des Körpers durch natürliche Mundreinigung, Rottenburg: Kopp Verlag, 7. Auflage 2016, Kapitel 3.

112 Mapstone, N. P. et al., Identification of Helicobacter pylori DNA in the mouths and stomachs of patients with gastritis using PCR. J Clin Pathol 46: 540 – 43, 1993.

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114 Yoshihara, A. et al., A longitudinal study of the relationship between periodontal disease and bone mineral density in community-dwellingolder adults 7. Cline Periodontal 31 (8). 680 – 84. 2004.

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117 Kim, J. M. et al., Dental health, nutritional status and recent-onset dementia in a Korean community population. Int J Geriatr Psychiatry 22 (9): 850 – 55, 2007. Nakayama, Y. et al., Oral health conditions in patients with Parkinson’s disease. J Epidemiol 14 (5): 143 – 150, 2004. McGrother, C. W. et al., Multiple sclerosis, dental caries and fillings: a case-control study. Br Dent J 187 (5): 261 – 64, 1999; Miklossy, J., Emerging roles of pathogens in Alzheimer disease. Expert Rev Mol Med 2011, 13; Sparks Stein, P. et al., Serum antibodies to periodontal pathogens are a risk factor for Alzheimer’s disease. Alzheimers Dement 8 (3): 196 – 203, 2012.

118 Mealey, B. L./Oates, T. W., Diabetes mellitus and periodontal diseases. J Periodontol 77 (8): 1289 – 1303, 2006.

119 Lacopino, A. M., Periodontitis and diabetes interrelationships: role of inflammation. Ann Periodontol 6 (1): 125 – 137, 2001.

120 Miklossy, J., Emerging roles of pathogens in Alzheimer disease. Expert Rev Mol Med 2011, 13; Sparks Stein, P. et al., Serum antibodies to periodontal pathogens are a risk factor for Alzheimer’s disease. Alzheimers Dement 8 (3): 196 – 203, 2012.

121 Grossi, S. G., Treatment of periodontal disease and control of diabetes: an assessment of the evidence and need for future research. Ann Periodontol 6 (1): 138 – 145, 2001.

122 Santos, J. L. et al., Copy number polymorphism of the salivary amylase gene: implications in human nutrition research. J Nutrigenet Nutrigenomics 5 (3): 117 – 131, 2012.

123 Hamzany, Y. et al., Is human saliva an indicator of the adverse health effects of using mobile phones? Antioxid Redox Signal 18 (6): 622 – 27, 2013.

124 Strong, J. P., Landmark perspective: Coronary atherosclerosis in soldiers. A clue to the natural history of atherosclerosis in the young. JAMA 256 (20): 2863 – 2866, 1986.

125 Ibid.

126 Bromfield, S./Muntner, P., High blood pressure: the leading global burden of disease risk factor and the need for worldwide prevention programs. Curr Hypertens Rep 15 (3): 134 – 136, 2013.

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128 Shaper, A. G./Jones, K. W., Serum-cholesterol, diet, and coronary heart-disease in Africans and Asians in Uganda. Int J Epidemiol 41 (5): 1221 – 1225, 2012.

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130 Herman, J., Saving U. S. dietary advice from conflicts of interest. Food and Drug Journal 65 (2): 285 – 316, 2010.

131 Hoogwerf, B. J. et al., Blood Glucose Concentrations ≤ 125 mg/dl and Coronary Heart Disease Risk. Am J Cardiol 89 (5): 596 – 599, 2002.

132 Gibson, A. N. et al., Stroke outcome in the ketogenic state: a systematic review of the animal data. Journal of Neurochemistry 123 (2): 52 – 57, 2012.

133 Roberts, W. C., High salt intake, its origins, its economic impact, and its effect on blood pressure. Am J Cardiol 88 (11): 1338 – 1346, 2001.

134 Dupont, J. J. et al., High dietary sodium intake impairs endothelium-dependent dilation in healthy salt-resistant humans. J Hypertens 31 (3): 530 – 536, 2013.

135 Cheng, P. et al., BMI affects the relationship between long chain n-3 polyunsaturated fatty acid intake and stroke risk: a meta-analysis. Sci Rep 5: 14161, 2015.

136 Harris, W. S., Omega-3 fatty acids and cardiovascular disease: a case for omega-3 index as a new risk factor. Pharmacological Research 55 (3): 217 – 223, 2007.

137 Ibid.

138 He, Z. et al., Efficacy and safety of omega-3 fatty acids for the prevention of atrial fibrillation: a meta-analysis. Can J Cardiol 29 (2): 196 – 203, 2013.

139 Landmark, K./Alm, C. S., [Fish and omega-3 fatty acids and heart failure]. Tidsskr Nor Laegeforen 132 (20): 2281 – 84, 2012.

140 Kojuri, J. et al., Effect of omega-3 on brain natriuretic peptide and echocardiographic findings in heart failure: Double-blind placebo-controlled randomized trial. J Cardiovasc Dis Res. 4 (1): 20 – 24, 2013.

141 Associations of Omega-3 Fatty Acid Supplement Use With Cardiovas cular Disease Risks: Meta-analysis of 10 Trials Involving 77 917 Individuals, JAMA Cardiol., 2018 Mar 1; 3 (3): 225 – 234.

142 Austin, G. L. et al., A very low-carbohydrate diet improves gastroesophageal reflux and its symptoms. Dig Dis Sci 51 (8): 1307 – 1312, 2006.

143 Singh, M. et al., Weight loss can lead to resolution of gastroesophageal reflux disease symptoms: a prospective intervention trial. Obesity (Silver Spring) 21 (2): 284 – 90, 2012.

144 Berger, M. et al., The expanded biology of serotoni Annu Rev Med 60: 355 – 66, 2009.

145 Liu, Z. et al., Tight junctions, leaky intestines, and pediatric diseases. Acta Paediatr 94 (4): 386 – 93, 2005; Schulzke, J. D. et al., Epithelial tight junction structure in the jejunum of children with acute and treated celiac sprue. Pediatr Res 43: 435 – 441, 1998; Maes, M. et al., Increased IgA responses to the LPS of commensal bacteria is associated with inflammation and activation of cell-mediated immunity in chronic fatigue syndrome. J Affect Disord 136 (3): 909 – 17, 2012; Caradonna, L. et al., Enteric bacteria, lipopolysaccharides and related cytokines in inflammatory bowel disease: biological and clinical significance. J Endotoxin Res 6 (3): 205 – 14, 2000; Maes, M. et al., The gut-brain barrier in major depression: intestinal mucosal dysfunction with an increased translocation of LPS from gram negative enterobacteria (leaky gut) plays a role in the inflammatory pathophysiology of depression. Neuro Endocrinol Lett 29 (1): 117 – 24, 2008; Sapone, A. et al., Zonulin upregulation is associated with increased gut permeability in subjects with type 1 diabetes and their relatives. Diabetes 55 (5): 1443 – 49, 2006; Amery, W. K./Forget, P. P., The role of the gut in migraine: the oral 51-Cr EDTA test in recurrent abdominal pain. Cephalgia 9 (3): 227 – 29, 1989; Yacyshyn, D. et al., Multiple sclerosis patients have peripheral blood CD45RO+ B cells and increased intestinal permeability. Dig Dis Sci 41 (12): 2493 – 98, 1996; Smith, M. et al., Abnormal bowel permeability in ankylosing spondylitis and rheumatoid arthritis. J Rheumatol 12 (2): 299 – 305, 1985; Orr, J. S. et al., Large artery stiffening with weight gain in humans: role of visceral fat accumulation Hypertension 51 (6): 1519 – 24, 2008; Buchanan, M. M. et al., Toll-like receptor 4 in CNS pathologies. J Neurochem 114 (1): 13 – 27, 2010.

146 Wenn Sie dieses Thema ausführlich vertiefen wollen, empfiehlt sich als Literatur mein Buch SCHLANK! und gesund mit der Doc Fleck Methode, Hilden: BJV Verlag 2017.

147 Keshavarzian, A. et al., Evidence that chronic alcohol exposure promotes intestinal oxidative stress, intestinal hyperpermeability and endotoxemia prior to development of alcoholic steatohepatitis in rats. J Hepatol 50 (3): 538 – 47, 2009.

148 Draper, A. J./Hammock, B. D., Identification of CYP2C9 as a human liver microsomal linoleic acid epoxygenase. Arch Biochem Biophys 376 (1): 199 – 205, 2000.

149 Dethlefsen, L. et al., The pervasive effects of an antibiotic on the human gut microbiota, as revealed by deep 16S rRNA sequencing. PLoS Biol 6 (11): e280, 2008.

150 Farhadi, A. et al., Susceptibility to gut leakiness: a possible mechanism for endotoxaemia in non-alcoholic steatohepatitis. Liver Int 28 (7): 1026 – 33, 2008. Campanella, C./Jamali, F., Influence of prolonged exposure of a short half life non-steroidal anti-inflammatory drugs on gastrointestinal safety. Inflammopharmacology 17 (4): 205 – 10, 2009.